Rice Husk Ash Pozzolan as Valuable Supplement in Concrete for Industrial and Domestic Applications

A. Duke, E. Eno
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Abstract

Controlled burning of rice husks at<700°C produced rice husk ash (RHA) which is predominantly amorphous silica (SiO2). RHA was used as a substitute for laterite and cement in proportions of 5%, 10%, 15%, 20%, 25% and 30% of concrete. The concrete was cured for 7 days, 14 days, 21 days, and 28 days respectively. It was observed that 20% of RHA provides the optimum strength. The effects of different particle sizes of 75, 150, 212, 300, 425 and 600 microns (µm) were tested using a compression test machine. A graph of average strength against particle size indicates 2.9 Nm-2 as the optimum strength at 75 µm and 1.2 Nm-2 as the minimum at 150 µm. From the ash size distribution, the presence of grains of several different sizes was observed. The grains were weighed using a weighing machine and a graph of particle size against percentage plotted to determine the particle size distribution. This showed that rice husk ash (RHA) is coarse grain material.
稻壳灰灰质作为工业和民用混凝土中有价值的添加剂
稻壳在<700°C下控制燃烧产生稻壳灰(RHA),主要是无定形二氧化硅(SiO2)。RHA作为红土和水泥的替代品,分别占混凝土的5%、10%、15%、20%、25%和30%。混凝土固化时间分别为7天、14天、21天、28天。结果表明,20%的RHA可提供最佳强度。采用压缩试验机测试了75、150、212、300、425和600微米(µm)不同粒径的压缩效果。平均强度随粒径变化的曲线图表明,在75µm处,最佳强度为2.9 Nm-2,在150µm处,最小强度为1.2 Nm-2。从灰分粒度分布来看,存在几种不同大小的颗粒。使用称重机对颗粒进行称重,并绘制粒度与百分比的关系图,以确定粒度分布。说明稻壳灰分是一种粗粮原料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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